首页> 外文期刊>International journal of computational fluid dynamics >Acceleration of three-dimensional Tokamak magnetohydrodynamical code with graphics processing unit and OpenACC heterogeneous parallel programming
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Acceleration of three-dimensional Tokamak magnetohydrodynamical code with graphics processing unit and OpenACC heterogeneous parallel programming

机译:与图形处理单元和OpenACC异构并行编程的三维TOKAMAK磁性动力学代码加速

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摘要

In this paper, the OpenACC heterogeneous parallel programming model is successfully applied to modification and acceleration of the three-dimensional Tokamak magnetohydrodynamical code (CLT). Through combination of OpenACC and MPI technologies, CLT is further parallelised by using multiple-GPUs. Significant speedup ratios are achieved on NVIDIA TITAN Xp and TITAN V GPUs, respectively, with very few modifications of CLT. Furthermore, the validity of the double precision calculations on the above-mentioned two graphics cards has also been strictly verified with m/n = 2/1 resistive tearing mode instability in Tokamak.
机译:本文成功地应用了OpenACC的异构并行编程模型,用于修改和加速三维Tokamak磁性流动正动力学代码(CLT)。 通过OpenACC和MPI技术的组合,CLT通过使用多GPU进一步并行化。 在NVIDIA Titan XP和Titan V GPU上分别实现了显着的加速比率,CLT的修饰很少。 此外,对上述两种显卡的双重精度计算的有效性也被托卡克中的M / N = 2/1电阻撕裂模式不稳定严格验证。

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